Expression of aberrant forms of AUXIN RESPONSE FACTOR8 stimulates parthenocarpy in Arabidopsis and tomato

被引:192
|
作者
Goetz, Marc [1 ]
Hooper, Lauren C. [1 ]
Johnson, Susan D. [1 ]
Rodrigues, Julio Carlyle Macedo [1 ]
Vivian-Smith, Adam [1 ]
Koltunow, Anna M. [1 ]
机构
[1] CSIRO, Glen Osmond, SA 5064, Australia
关键词
D O I
10.1104/pp.107.104174
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Fruit initiation in Arabidopsis ( Arabidopsis thaliana) is generally repressed until fertilization occurs. However, mutations in AUXIN RESPONSE FACTOR8 (ARF8) uncouple fruit initiation from fertilization, resulting in the formation of seedless, parthenocarpic fruit. Here we induced parthenocarpy in wild-type Arabidopsis by introducing either the mutant genomic ( g) Atarf8-4 sequence or gAtARF8:beta-glucuronidase translational fusion constructs by plant transformation. Silencing of endogenous AtARF8 transcription was not observed, indicating that the introduced, aberrant ARF8 transcripts were compromising the function of endogenous ARF8 and/or associated factors involved in suppressing fruit initiation. To analyze the role of ARF8 in tomato ( Solanum lycopersicum) we initially emasculated 23 tomato cultivars to test for background parthenocarpy. Surprisingly, all had a predisposition to initiate fertilization-independent fruit growth. Expression of gAtarf8-4 in transgenic tomato ('Monalbo') resulted in a significant increase in the number and size of parthenocarpic fruit. Isolation of tomato ARF8 cDNA indicated significant sequence conservation with AtARF8. SlARF8 may therefore control tomato fruit initiation in a similar manner as AtARF8 does in Arabidopsis. Two SlARF8 cDNAs differing in size by 5 bp were found, both arising from the same gene. The smaller cDNA is a splice variant and is also present in Arabidopsis. We propose that low endogenous levels of the splice variant products might interfere with efficient formation/function of a complex repressing fruit initiation, thereby providing an explanation for the observed ovary expansion in tomato and also Arabidopsis after emasculation. Increasing the levels of aberrant Atarf8-4 transcripts may further destabilize formation/function of the complex in a dosage-dependent manner enhancing tomato parthenocarpic fruit initiation frequency and size and mimicking the parthenocarpic dehiscent silique phenotype found in homozygous Atarf8-4 mutants. Collectively these data suggest that similar mechanisms involving auxin signaling exist to inhibit parthenocarpic fruit set in tomato and Arabidopsis.
引用
收藏
页码:351 / 366
页数:16
相关论文
共 50 条
  • [41] Ethylene response factor ERF.D7 activates auxin response factor 2 paralogs to regulate tomato fruit ripening
    Gambhir, Priya
    Singh, Vijendra
    Parida, Adwaita
    Raghuvanshi, Utkarsh
    Kumar, Rahul
    Sharma, Arun Kumar
    [J]. PLANT PHYSIOLOGY, 2022, 190 (04) : 2775 - 2796
  • [42] Neutron irradiation affects the expression of genes involved in the response to auxin, senescence and oxidative stress in Arabidopsis
    Fortunati, Alessio
    Tassone, Paola
    Damasso, Mario
    Migliaccio, Fernando
    [J]. PLANT SIGNALING & BEHAVIOR, 2010, 5 (08) : 959 - 967
  • [43] The Solanum lycopersicum auxin response factor 7 (SlARF7) regulates auxin signaling during tomato fruit set and development
    de Jong, Maaike
    Wolters-Arts, Mieke
    Feron, Richard
    Mariani, Celestina
    Vriezen, Wim H.
    [J]. PLANT JOURNAL, 2009, 57 (01): : 160 - 170
  • [44] The Impact of Tobamovirus Infection on Root Development Involves Induction of Auxin Response Factor 10a in Tomato
    Vaisman, Michael
    Hak, Hagit
    Arazi, Tzahi
    Spiegelman, Ziv
    [J]. PLANT AND CELL PHYSIOLOGY, 2023, 63 (12) : 1980 - 1993
  • [45] High auxin stimulates callus through SDG8-mediated histone H3K36 methylation in Arabidopsis
    Jun Ma
    Qiang Li
    Lei Zhang
    Sen Cai
    Yuanyuan Liu
    Juncheng Lin
    Rongfeng Huang
    Yongqiang Yu
    Mingzhang Wen
    Tongda Xu
    [J]. Journal of Integrative Plant Biology, 2022, 64 (12) : 2425 - 2437
  • [46] High auxin stimulates callus through SDG8-mediated histone H3K36 methylation in Arabidopsis
    Ma, Jun
    Li, Qiang
    Zhang, Lei
    Cai, Sen
    Liu, Yuanyuan
    Lin, Juncheng
    Huang, Rongfeng
    Yu, Yongqiang
    Wen, Mingzhang
    Xu, Tongda
    [J]. JOURNAL OF INTEGRATIVE PLANT BIOLOGY, 2022, 64 (12) : 2425 - 2437
  • [47] Arabidopsis AUXIN RESPONSE FACTOR6 and 8 Regulate Jasmonic Acid Biosynthesis and Floral Organ Development via Repression of Class 1 KNOX Genes
    Tabata, Ryo
    Ikezaki, Masaya
    Fujibe, Takahiro
    Aida, Mitsuhiro
    Tian, Chang-en
    Ueno, Yoshihisa
    Yamamoto, Kotaro T.
    Machida, Yasunori
    Nakamura, Kenzo
    Ishiguro, Sumie
    [J]. PLANT AND CELL PHYSIOLOGY, 2010, 51 (01) : 164 - 175
  • [48] SlARF4, an Auxin Response Factor Involved in the Control of Sugar Metabolism during Tomato Fruit Development
    Sagar, Maha
    Chervin, Christian
    Mila, Isabelle
    Hao, Yanwei
    Roustan, Jean-Paul
    Benichou, Mohamed
    Gibon, Yves
    Biais, Benoit
    Maury, Pierre
    Latche, Alain
    Pech, Jean-Claude
    Bouzayen, Mondher
    Zouine, Mohamed
    [J]. PLANT PHYSIOLOGY, 2013, 161 (03) : 1362 - 1374
  • [49] SIARF10, an auxin response factor, is involved in chlorophyll and sugar accumulation during tomato fruit development
    Yuan, Yujin
    Mei, Lihua
    Wu, Mengbo
    Wei, Wei
    Shan, Wei
    Gong, Zehao
    Zhang, Qian
    Yang, Fengqing
    Yan, Fang
    Zhang, Qiang
    Luo, Yingqing
    Xu, Xin
    Zhang, Wenfa
    Miao, Mingjun
    Lu, Wangjin
    Li, Zhengguo
    Deng, Wei
    [J]. JOURNAL OF EXPERIMENTAL BOTANY, 2018, 69 (22) : 5507 - 5518
  • [50] Down-regulation of an Auxin Response Factor in the tomato induces modification of fine pectin structure and tissue architecture
    Guillon, Fabienne
    Philippe, Sully
    Bouchet, Brigitte
    Devaux, Marie-Francoise
    Frasse, Pierre
    Jones, Brian
    Bouzayen, Mondher
    Lahaye, Marc
    [J]. JOURNAL OF EXPERIMENTAL BOTANY, 2008, 59 (02) : 273 - 288